School of Light Industry and Chemical Engineering, Dalian Polytechnic University, Dalian, China.
School of Light Industry and Chemical Engineering, Dalian Polytechnic University, Dalian, China.
Int J Biol Macromol. 2021 Apr 15;176:448-458. doi: 10.1016/j.ijbiomac.2021.02.104. Epub 2021 Feb 17.
Constructing robust hydrogels with biodegradability and dual stimuli-responsive by utilizing natural polymer as raw materials remains a sustaining challenge. Herein, we proposed an interpenetrating strategy in which N-isopropyl acrylamide (NIPAM) and acrylamide (AM) block copolymers were introduced as the second network into the carboxymethyl cellulose single network gel (CMC gel) to construct a dual-network robust hydrogel (CMC/PNIPAM-co-PAM). The dual-network design strategy effectively improves the mechanical strength of CMC gel. The hydrogel suggests intelligent dual stimuli-responsive behavior to pH and temperature. Furthermore, the copolymerization of NIPAM and AM regulated the low critical solution temperature (LCST) of the hybrid hydrogel, making it close to the physiological temperature of the human body. With the aim of evaluating its application in drug delivery, we loaded tetracycline into the dual-network hydrogel and simulated its release process under the pH microenvironment of the small intestine and the physiological temperature to infer its potential application in intestinal inflammation treatments. Moreover, it is proved that the strong hydrogel possesses good cytocompatibility in vitro biocompatibility testing. In addition, the embedding of tetracycline makes the hydrogel excellent antioxidant performance. This dual-stimulus response integrated hydrogel is expected to play a critical role in drug delivery and targeted therapy.
利用天然聚合物作为原料构建具有生物降解性和双重刺激响应的强韧水凝胶仍然是一个持续的挑战。在此,我们提出了一种互穿策略,将 N-异丙基丙烯酰胺(NIPAM)和丙烯酰胺(AM)嵌段共聚物作为第二网络引入羧甲基纤维素单网络凝胶(CMC 凝胶)中,构建了一种双重网络强韧水凝胶(CMC/PNIPAM-co-PAM)。双重网络设计策略有效地提高了 CMC 凝胶的机械强度。该水凝胶对 pH 值和温度表现出智能的双重刺激响应行为。此外,NIPAM 和 AM 的共聚调节了杂化水凝胶的低临界溶液温度(LCST),使其接近人体的生理温度。为了评估其在药物传递中的应用,我们将四环素载入双重网络水凝胶中,并模拟其在模拟小肠 pH 微环境和生理温度下的释放过程,以推断其在肠道炎症治疗中的潜在应用。此外,体外生物相容性测试证明了强水凝胶具有良好的细胞相容性。此外,四环素的嵌入使水凝胶具有优异的抗氧化性能。这种双重刺激响应集成水凝胶有望在药物传递和靶向治疗中发挥关键作用。